In Depth Analysis and Survey of COVID-19 Pandemic Impact on Global Cancer Stem Cell Market Report 2020 Key Players Thermo Fisher Scientific Inc.,…

Rising number of corona virus cases has impacted numerous lives and led to numerous fatalities, and has affected the overall economic structure globally. The Cancer Stem Cell has analyzed and published the latest report on the global Cancer Stem Cell market. Change in the market has affected the global platform. Along with the Cancer Stem Cell market, numerous other markets are also facing similar situations. This has led to the downfall of numerous businesses, because of the widespread increase of the number of cases across the globe.href=mailto:nicolas.shaw@cognitivemarketresearch.com>nicolas.shaw@cognitivemarketresearch.com or call us on +1-312-376-8303.

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The major players in the Cancer Stem Cell market are Thermo Fisher Scientific Inc., AbbVie Inc., Merck KGaA, Bionomics, Lonza, Stemline Therapeutics Inc., Miltenyi Biotec, PromoCell GmbH, MacroGenics Inc., OncoMed Pharmaceuticals Inc., Irvine Scientific, STEMCELL Technologies Inc., Sino Biological Inc., BIOTIME Inc. . Some of the players have adopted new strategies to sustain their position in the Cancer Stem Cell market. A detailed research study is done on the each of the segments, and is provided in Cancer Stem Cell market report. Based on the performance of the Cancer Stem Cell market in various regions, a detailed study of the Cancer Stem Cell market is also analyzed and covered in the study.

Report Scope: Some of the key types analyzed in this report are as follows: Cell Culturing, Cell Separation, Cell Analysis, Molecular Analysis, Others

Some of the key applications as follow: Stem Cell Based Cancer Therapy, Targeted CSCs

Following are the major key players: Thermo Fisher Scientific Inc., AbbVie Inc., Merck KGaA, Bionomics, Lonza, Stemline Therapeutics Inc., Miltenyi Biotec, PromoCell GmbH, MacroGenics Inc., OncoMed Pharmaceuticals Inc., Irvine Scientific, STEMCELL Technologies Inc., Sino Biological Inc., BIOTIME Inc.

An in-depth analysis of the Cancer Stem Cell market is covered and included in the research study. The study covers an updated and a detailed analysis of the Cancer Stem Cell market. It also provides the statistical information of the Cancer Stem Cell market. The study of the report consists of the detailed definition of the market or the overview of the Cancer Stem Cell market. Furthermore, it also provides detailed information for the target audience dealing with or operating in this market is explained in the next section of the report.

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The report also provides detailed information on the research methodologies, which are used for the analysis of the Cancer Stem Cell market. The methods are covered in detail in this section of the report. For the analysis of the market, several tools are used for the extraction of the market numbers. Among the several tools, primary and secondary research studies were also incorporated for the research study. These were further analyzed and validated by the market experts, to increase precision and make the data more reliable.

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According to the estimation and the analysis of the market, the Cancer Stem Cell market is likely to have some major changes in the estimated forecasts period. Moreover, these changes can be attributed to the changes due to economic and trading conditions across the globe. Moreover, several market players operating in the Cancer Stem Cell market will have to strategically change their business strategies in order to survive in the market.

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Reasons for Buying this Cancer Stem Cell Report 1. Cancer Stem Cell market advertise report helps with understanding the Basic product segments alongside likewise their potential future. 2. This global Cancer Stem Cell report offers pin-point evaluation for changing competitive dynamics. 3. The Cancer Stem Cell market supplies pin point analysis of changing competition dynamics and keeps you in front of competitors 4. Original images and illustrated a SWOT evaluation of large segments supplied by the Cancer Stem Cell market. 5. This report supplies a forward-looking perspective on different driving factors or controlling Cancer Stem Cell market gain. 6. This report assists to make wise business choices using whole insights of the Cancer Stem Cell and also from creating a comprehensive evaluation of market sections. Note In order to provide more accurate market forecast, all our reports will be updated before delivery by considering the impact of COVID-19.

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In Depth Analysis and Survey of COVID-19 Pandemic Impact on Global Cancer Stem Cell Market Report 2020 Key Players Thermo Fisher Scientific Inc.,...

Stem Cell Artificial Meat Market 2020 Size by Product Analysis, Application, End-Users, Regional Outlook, Competitive Strategies and Forecast to 2027…

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Juvenile Macular Degeneration (Stargardt Disease) Treatment Market Size, Top Manufacturers, Product Types, Applications and Specification, Forecast to…

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Why Silicon Valley Execs Are Investing Billions to Stay Young – Robb Report

Entrepreneur Dave Aspreys end-of-life plans are quite simple, really, even if some of his ambitions sound laughably optimistic to most of us.I want to die at a time and by a method of my own choosing, and keep doing awesome things until that day, he tells me. I dont think its outrageous to believe Ill make it to 180 years old. And if I run out of energy, itll just be because I did too much cool shit for my own good.

Asprey is strolling across his lush property in British Columbia, holding up his phone and pointing out the specimens in this years garden as we chat over Zoom in the midst of the global pandemic. Hes protecting his skin from the sun with a goofy Outdoor Research hat and wearing a long string of beads that he says are each over a hundred years old, from cultures around the world.

Asprey, 48, is the founder of the Bulletproof wellness empire and a vocal champion of the movement to extend human life expectancy beyond 100 years. Hes made millions by experimenting on his own body and packaging his home-brewed discoveries into books, a podcast, consulting services and consumer products (you may have even tried his butter-laced coffee). Asprey, who was a web-security executive before he became the Bulletproof Executive, is just one of a cadre of tech elite who have begun directing their attentionand truckloads of moneytoward the problem of life extension. Jeff Bezos, Peter Thiel, Sergey Brin, Larry Ellisonname a Silicon Valley A-lister and he or she is likely funding longevity research, experimenting with anti-aging interventions or both. These are the masters of the universe who see no reason they cant take the tech industrys optimization obsession and apply it to the ultimate challenge: conquering death itself.

And their efforts appear to be paying off: Thanks to a recent explosion of advances in longevity medicine, Aspreys vision of living healthfully into his second century might not be so crazy. In fact, for people in middle age right now, a handful of therapies in clinical trials have the potential, for the first time in human history, to radically transform what old age looks like. If the life extensionists are right, a person whos 40 today might reasonably expect to still be downhill skiing, running a 10K or playing singles tennis at 100.

Dave Asprey Dave Asprey

If you do anti-aging right, Asprey insists, youll have a level of resilience and energy to fight what comes your way. If you get Covid-19, youre less likely to become very sick. The idea is that at a cellular level, youre making yourself very hard to kill.

The most extreme of the controversial interventions Asprey has undergone involved having stem cells extracted from his own bone marrow and fat and then injected into hundreds of locations on his body. Into every joint, between every vertebra and into my cerebrospinal fluid, face and sex organs, he tells me cheerfully. For what I spent on that, I could have bought a really nicely appointed Tesla.

He trots up a flight of stairs to his home office, which sits above a million-dollar lab filled with health gadgets, such as a cryochamber, a hypoxic trainer and an AI-enabled stationary bike. For a wealthy person, investing in your body should be a major part of your Im rich strategy, he explains. Personally, I think you should be spending at least 2 to 3 percent of your net worth on health and longevity. Get a personal chef who can cook you the right food. Its not that hard.

It might be an exaggeration to say BioViva CEO Liz Parrish believes death is optional, but for her, Aspreys goal of living to 180 shows a distinct lack of ambition. If you can reach homeostasis in the body, Parrish says, where its regenerating itself just a little bit faster than its degrading, then what do you die of? An accident or natural disaster, probably. Theres no expiration date at 90 or 100 years old.

Tall, blond and fit, Parrish cuts a strikingly youthful figure at 49one that might convince you to order whatever shes having. But, like Asprey, she has received criticism from the longevity research community for becoming patient zero in her own experimental drug trial, aimed at halting aging at the cellular level. In 2015, Parrish underwent telomerase and follistatin gene therapies in Bogota, Colombia. The procedures involved receiving around a hundred injections of a cocktail of genes and a virus modified to deliver those new genes into her bodys cells. The objective was to prevent age-related muscle loss and lengthen her telomeres: the caps at the end of our chromosomes. Scientists have identified their unraveling as not only a marker of aging but also a potential cause of age-related decline.

Liz Parrish Liz Parrish

Parrish told the media about her clandestine experiment and has published periodic updates on her condition in the five years since, and she reports that she has indeed increased her muscle mass and lengthened her telomeres. Parrishs punk-rock approach stems from her conviction that the medical-research communityboth the Food and Drug Administration (FDA) and researchers who arent business-mindedis moving too slowly, with too much red tape, when it comes to advancing aging therapeutics. But gene therapy is a relatively new area of medicine that brings with it a host of new risks, including cancer, severe immune reactions and infections caused by the viral vector used to deliver the drug.

Parrish downplays such worries. There may be risks, she tells Robb Report. But the known risk is that youre 100 percent likely to die. So you have to decide for yourself if the potential benefit outweighs that.

Humans have always aspired to find the fountain of youth, so people might be skeptical about the fact that anti-aging technologies are working now, says British investor and businessman Jim Mellon. But the fact is that this is finally happening, and we need to seize the moment. Mellon cofounded Juvenescence, a three-year-old pharmaceutical company thats investing in multiple technologies simultaneously to increase the odds of bringing winning products to market.

Mellon, 63, has made his fortune betting on well-timed investment opportunities, and he predicts that a new stock-market mania for life extension is just around the corner. This is like the internet dial-up phase of longevity biotech, he enthuses. If youd invested in the internet in the very early days, youd be one of the richest people on the planet. Were at that stage now, so the opportunity for investors is huge. According to a report by Bank of America Merrill Lynch, hes not wrong: The market for technologies to increase human life span is projected to grow sixfold to $610 billion in just the next five years.

When I talk to Mellon in the late spring, hes sequestered on the rugged coast of the Isle of Man, a tiny spit of land in the Irish Sea. Despite being what he describes as imprisoned there for 15 weeksand countingduring the Covid-19 shutdown, hes jovial and chatty and wants to make it clear that his interest in life extension is much more than financial. Working to extend life is an ethical cause, he says. If we can help people to live healthfully until the end of life, well transform the world completely. Well reduce a huge amount of pressure on failing health-care systems, and well have to reimagine pension and life insurance. This should be the number-one tick in anyones investment portfolio.

If youd like to get on board with this social-impact view of longevity, it helps to understand the trajectory of aging today. In Americas most affluent neighborhoods, the average life span is about 88 years. (Meanwhile, in this countrys poorest, it hovers around a meager 66 because of a raft of inequalities, such as diet, stress, smoking, pollution and health care.) For most people, health starts gradually diminishing in the last 15 years of life with the onset of chronic conditions, including arthritis, neurodegeneration and diabetes. If we could eliminate such diseases of aging, experts say, the US could save an estimated $7.1 trillion in health-care costs over the next 50 years. (Quite where all these sprightly centenarians might live on this already densely populated planet remains to be seen.)

Jim Mellon Eric Verdin

One of Mellons bets is on a class of drugs called senolytics, which destroy senescent cells: the so-called zombie cells that, for complex reasons, stop dividing as we age. Senescent cells harm the body by secreting compounds that cause inflammation in surrounding tissues. Many age-related conditionsarthritis, diabetes, Alzheimers, cancerhave an inflammatory component, and studies suggest that a buildup of senescent cells is a large part of the problem.

A number of biotech start-ups are devel- oping drugs that target cell senescence, but the furthest along is Unity Biotechnology, a company in South San Francisco that has three drugs in clinical trials to address aging conditions, starting with osteoar- thritis of the knee. Unity raised more than $200 million from such big names as Thiel and Bezos, who chipped in through their investment firms, before going public in 2018. Since then, Mellon has also bought a small stake.

The holy grail of senolytics will be the development of a preventive therapy to wipe out senescent cells in the body before they cause conditions of aging, theoretically extending life span. In June, a team from Sloan Kettering published new breakthrough research showing that CAR T cellstypically used for precision cancer therapycan also be used to target and kill senescent cells. Prescription senolytics for anti-aging therapy are still years away, but unsurprisingly, theres an audience of longevity enthusiasts who want to access such anti-aging miracles yesterdayand no shortage of FDA-unapproved ways to chase after them. For instance, after a few studies examined the senolytic effects of a chemotherapy drug called dasatinib, the website FightAging.org published a step-by-step guide to senolytic self-experimentation using chemotherapeutics.

It doesnt take a Ph.D. in biochemistry to guess that taking off-label chemo drugs might come with harmful side effects, but that hasnt stopped a zealous group of body-hackers from trying it themselves and chronicling their efforts online. The internet is littered with novice longevity adviceand sketchy anti-aging companies eager to separate the hopeful and desperate from their money, like the company that charges $8,000 for transfusions of plasma from the blood of teenagers and early-twentysomethings (yes, just like Gavin Belson on HBOs Silicon Valley). Many of these are at best ineffective and at worst deadly, since the same cellular systems that fuel growth in young people might cause cancer when tipped into overdrive. Imagine the tragic irony of paying tens of thousands for a therapy that promises to help you live longer but actually causes the cancer that kills you.

Adobe

Beyond the obvious red flags of repurposed chemo drugs and the bloodletting of teens, it can be difficult for a layperson to separate the world-changing longevity breakthroughs from the terrible ideas. Enter one of the worlds leading experts on longevity to help make sense of things.

Eric Verdin, 63, is president and CEO of the Buck Institute, a globally renowned center for aging research just outside San Francisco in Marin County. Verdin is bullish on the promise of living healthfully to at least 100. Today. But 180? Dont count on it. My prediction, based on everything we know today, is that getting to 120 is about the best we can do for the foreseeable future. Ill bet my house were not going to see anyone live to 180 for another 200 years, if ever, he says. But making everyone a healthy centenarian, this is something we can do today. And thats something to be excited about.

Verdins own lab at the Buck Institute studies the aging immune system and how its affected by lifestyle factors, such as nutrition and exercise. Informed by this research, Verdin follows a time-restricted diet in which he eats all of his meals in an eight-to-nine-hour window (similar to the Buchinger Wilhelmi process) and gets plenty of exercise mountain biking in Marins steep hills. The good news is that over 90 percent of what causes diseases of aging is environmental, and that means its within your control, he says.

But he emphasizes that responsible management of your health comes with limits, like avoiding experimental therapies. A group of people have decided to try some expensive and dangerous interventions, but there is zero evidence that any of these are going to help them live longer, he says. The problem, according to Verdin, is that the results of aging interventions in mouse trials can look very promising but rarely translate to success in humans. Theres a huge delta between the health of a stressed lab mouse and an optimally healthy mouse, Verdin says. So when you treat lab mice with longevity therapeutics, you see an outsized result that doesnt at all guarantee the same result in humans.

On the other hand, Verdin tells Robb Report, there are definitely new protocols worth getting excited about. Take, for instance, rapalogs, a class of drugs that interact with a protein called mTOR, which serves as a linchpin for multiple critical biological processes, including cell growth and metabolism. Rapalog drugs tamp down mTOR, possibly preventing age-related diseases such as diabetes, stroke and some cancers. The drug rapamycin, the most heavily studied formula, was approved in the US in 1999 to help prevent organ-transplant rejection. Last year the medical journal Aging published a rapturous opinion piece by oncologist Mikhail Blagosklonny in which he made the case that rapamycinin small or intermittent dosesis effective as a preventive treatment to ward off diseases of aging, and that, in the elderly, not taking rapamycin may be even more dangerous than smoking.

Eric Verdin Jim Hughes Photography

Later this year, a biotech firm called resTORbio, which was spun out of the Swiss-based Big Pharma company Novartis in 2017, is expected to seek FDA approval for its rapalog RTB101, which clinical trials have shown to slow age-related decline of the immune system and improve immune response in elderly people by more than 20 percent, a key factor in protecting vulnerable aging populations from disease. (It is currently in trials on elderly patients with Covid-19.) This is the furthest-along program of anything in the aging field, Joan Mannick, cofounder and chief medical officer of resTORbio, told MIT Technology Review last year. If health authorities approve this drug well have a product for people to prevent age-related diseases. Not just in our lifetime, but in, you know, a few years.

One of the many effects of rapamycin is that it mimics the mechanisms of calorie restriction. As Verdins lab and others have shown, fasting provides a number of anti-aging benefits, including insulin regulation, reduced inflammation and, to put it colloquially, clearing out the gunky by-products of metabolismpart of the reason Twitter CEO Jack Dorsey and other tech titans eat just a few meals per week. For lesser mortals, fasting is extremely hard to commit to and not much fun, hence the huge interest in calorie-restriction mimetics like rapamycin, which provide all the benefits without the downer not-eating part.

Of all the calorie-restriction mimetics, the one sparking the most excitement among longevity researchers is already on the market: metformin, a decades-old diabetes drug. Metformin became a part of the Silicon Valley health regimen several years ago after an epidemiological study showed that Type 2 diabetics who took the drug lived longer than non-diabetics who didnt. Just about everyone in the longevity industry takes metformin, Verdin tells me. He takes it himself, and nearly everybody I interviewed is taking or has taken it, too.

In April, Nir Barzilai, the renowned endocrinologist who spearheaded research on the anti-aging properties of metformin, announced in an opinion piece he co-authored in the journal Cell Metabolism that his lab is launching a large clinical trial to investigate the anti-aging effects of the drug on non-diabetic populations. Barzilais goal is to prove to the FDA that aging itselfrather than conditions associated with it, like Alzheimers and arthritiscan be targeted as a disease. If Barzilai is successful and the FDA approves aging as a treatment indication, the process of bringing longevity therapies to market would accelerate rapidly.

Just as the FDA was able to move faster to bring Covid-19 therapies to market this year, we will reach a tipping point when public opinion pushes the FDA to approve aging as an indication, and the longevity-research field will make leaps as a result, Mellon says. He has contributed funding to Barzilais metformin research, which he believes will be instrumental in proving that there are compounds that can extend human life across the board.

The fact of the matter is that the US has the best regulatory system for new drug development in the world, Mellon says. Were in the first era ever when humans can be bioengineered to live longer. And in 10 years, well have solutions that are even better than today. Just wait, its coming.

Liz Parrish

Jim Mellon

Diet: Vegetarian.Mindfulness practice: Nightly meditation.

Exercise regimen: 30 minutes of cardio and 10 minutes of weights, five days a week.

Anti-aging Rx: Regenerative gene therapies. Im certain most people will take them in the next couple decades.

180th-birthday wish: Solving another critical issue.

Sleep routine: 7.5 hours plus a 30-minute nap; in bed by 9 p.m.

Vitamins/supplements/ prescription meds: Vitamins D and B12, metformin.

Exercise regimen: Walk or run minimum 10,000 steps a day; weights three times week.

Anti-aging Rx: Green tea.

100th-birthday wish: Another 25 years.

Dave Asprey

Jim Hughes Photography

180th-birthday wish: Either a cruise to Mars or a 1970 Mustang Fastback, which by then will be 210 years old!

Sleep Routine: Avoid: coffee after 2 p.m., heavy workouts after 6 p.m., alcohol during the week and heavy eating in the evening.

Vitamins/supplements: Vitamin D, omega fatty acids, NMN, citrus bioflavonoid complex, fiber supplement, prebiotic supplement.

Diet: Fasting-mimicking diet once every four to six months; roughly 16:8 intermittent fasting at other times.

Mindfulness practice: Daily meditation.

Anti-aging Rx: I love cooking and eating, so I do not restrict food on the weekend. Happiness with friends and family is the surest path to longevity.

100th-birthday wish: A bike tour across the US, from coast to coast.

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Why Silicon Valley Execs Are Investing Billions to Stay Young - Robb Report

Global Negative Pressure Wound Therapy Market with Covid-19 Impact Analysis | Industry Business Outlook, Revenue, Trends and Forecasts 2024 – Owned

Global Negative Pressure Wound Therapy Market Analysis to 2024 is a focused and comprehensive study of the Negative Pressure Wound Therapy industry with a focus on the global market trend. The information mentioned in the Global Negative Pressure Wound Therapy Market research report presents an overview of the latest trends observed in the global market. Besides, this report emphases on the latest events such as the technological developments and the product launches and their consequences on the Market. The research report delivers the global market revenue, parent market trends along with market attractiveness per market segment.

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Top Players of Negative Pressure Wound Therapy Market are:

Acelity (KCI) Smith & Nephew Cardinal Health Devon Medela Triage Meditech WuHan VSD Talley Group Regional Negative Pressure Wound Therapy Market (regional production, demand and forecast by country):

The main goals of the research report elegant the overall market overview on Negative Pressure Wound Therapy market dynamics, historic volume and value, robust market methodology, Latest and future trends, Porters Five Forces Analysis, new technological development, cost structure, government policies and regulations, etc. Major companies, company overview, financial data, products and services, strategy analysis, key developments market competition, industry competition structure analysis, SWOT Analysis, etc.

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KEY MARKET SEGMENTS

On the basis of types, the Negative Pressure Wound Therapy Market is primarily split into:

Conventional NPWT Devices Disposable NPWT Devices On the basis of applications, the Negative Pressure Wound Therapy Market covers:

Hospitals Clinics Homecare

Which market factors are explained in the report?

Study Coverage:Covers significant companies, vital market segments, the scope of the products offered in the global Negative Pressure Wound Therapy market, the years considered and the study objectives.

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Production by region:This Negative Pressure Wound Therapy report provides information on imports and exports, production, sales and key players in all examined regional markets.

Manufacturer Profile:Each Company defined in this section is screened based on a SWOT analysis, products, value, their capacity and other important factors.

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Table of Contents

1 Negative Pressure Wound Therapy Market Overview

2 Global Negative Pressure Wound Therapy Competition by Manufacturers

3 Global Negative Pressure Wound Therapy Capacity, Revenue (Value) by Region)

4 Global Negative Pressure Wound Therapy Supply (Production), Export, Import by Region

5 Global Negative Pressure Wound Therapy Market Revenue (Value), Price Trend by Type

6 Global Negative Pressure Wound Therapy Market by Application

7 Global Negative Pressure Wound Therapy Company Profiles

8 Industrial Chain, Sourcing Strategy and Downstream Buyers

9 Negative Pressure Wound Therapy Market Effect Factors Analysis

10 Global Negative Pressure Wound Therapy Market Forecast

11 Research Findings and Conclusion

12 Appendix

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Global Negative Pressure Wound Therapy Market with Covid-19 Impact Analysis | Industry Business Outlook, Revenue, Trends and Forecasts 2024 - Owned

Nearly 70K donated so far towards Wistaston boy’s 120K lifesaving treatment – Cheshire Live

A WIstaston family are overwhelmed by the generosity of people who have donated nearly 70K so far towards the 120K needed for lifesaving treatment for their 11-year-old son.

Georgy Capener was diagnosed with the highly malignant Ewings Sarcoma, a rare form of bone cancer, following a fall in a friends's garden on Easter Sunday in 2018.

He has undergone numerous rounds of high dose aggressive chemotherapy and radiotherapy since then, lost his right arm as a result of the treatment and now has a titanium prosthesis.

Georgy went into remission last March, but the cancer returned in April this year, this time in his left sinus, just under his eye socket and in the back of his nose.

The Wistaston Church Lane pupil is now undergoing chemotherapy and radiotherapy again - but the vital stem cell therapy which is essential to ensure he can live a normal, healthy life and prevent the cancer returning at a later stage costs 130,000 and is not available for Georgy on the NHS.

The money needs to be raised by the beginning of September, when Georgy is due to finish his final round of chemotherapy, as, for the stem cell treatment to be successful, the procedure would have to start immediately after that to ensure the cancer doesnt return straight away,

This week Georgys mum, Helen Capener, was close to tears she was so overwhelmed by the generosity of people who have donated and organised fundraisers.

I just cant believe the total raised so far, she said. Its just so nice. Weve got fundraisers doing things all over the place, my cousins biking from Peterborough to Crewe, weve got people in Cheadle doing stuff, everywhere, its brilliant

Ive been trying to keep up with whos donating. Its so lovely, Im still overwhelmed.

She said money had flooded in from Crewe Chronicle, CheshireLive and Liverpool Echo readers.

Passionate Liverpool fan Georgy has also received a video message of support from the Reds defender Andy Robertson.

It was brilliant, said Helen. Unfortunately I wasnt there when he received it. It was his dads turn to take him to radiotherapy so he saw it in the car so I didnt see his reaction but his dad said he was absolutely over the moon. His little face lit up and he just loves it. As soon as he came back, he ran in to show me.

There are so many fundraising events taking place to raise money for Georgys treatment, it is impossible to list them all here.

They range from an online fitness class which took place on Saturday, to people walking up Snowdon at the end of this month, one person has sold off their vinyl collection, others are making T-shirts and hoodies with the Georgys Fight logo, theres a big raffle and Georgys Fight jewellery being made and sold by another fundraiser.

A Facebook Page set up by a family friend, called Georgys Fight, lists how you can help.

Helen said that she and husband, Richard, cant thank people enough.

Georgy is undergoing his last round of chemotherapy this week.

Speaking earlier this week, Helen said: He finishes his radiotherapy this Friday (August 7) so hes struggling a bit now. Hes been having lots of nosebleeds and hes got an ulcer right at the back of his throat so hes still unable to eat much and hes got ulcers all on the left hand side of his cheek which are stinging.

They did tell us that this would happen and we expected it a bit earlier, so hes done really well to get this far but the last week or so started to take its toll.

Hes got four more sessions after this and its finished.

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He didnt want to go this morning because he knows that at each session its going to hurt even more, but he always bounces back. Once hes finished the radiotherapy, give him a couple of weeks and hell be back to feeling ok again I think.

Georgy has been accepted by a clinic in Thailand to undergo the vital stem cell treatment he needs next month but it is essential the treatment starts in September ensure the cancer doesnt return straight away,

That is why the family set up the JustGiving fundraising page to help save our sons life.

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Nearly 70K donated so far towards Wistaston boy's 120K lifesaving treatment - Cheshire Live

3D Cell Culture Market by Business Growth, Development Factors, Applications, and Future Prospects 2020 2024 – Owned

The 3D cell culture market is witnessing a stable growth due to the factors, like huge investments by life science companies for R&D, development of automated large-scale cell culture systems, and rising need for organ transplantation. Lack of experienced and skilled professionals and budget restriction for small and medium-sized laboratories are factors constraining the growth of the 3D cell culture market. However, increasing focus on regenerative medicine and stem cell is acting as an opportunity in the future. The scaffold-based segment holds the largest market share in the global market. The use of hydrogels in the scaffold-based 3D cell culture is the key factor driving the scaffold-based segment, as they can be derived naturally from protein and ECM components (laminin, fibrin, hyaluronic acid, chitosan, etc.). These gels are also biocompatible.

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Scope of the Report:

This report analyzes and discusses the 3D cell culture market. The market has been segmented on the basis of technology, application, end user, and geography. Based on technology, the market has been segmented into extracellular matrices (scaffolds), bioreactors, gels, scaffold-free platforms, microchips, and other technologies. The market, based on application, has been divided into research, drug discovery, tissue engineering, clinical applications, stem cell biology, and other applications. Based on end user, the market has been segregated into research laboratories and institutes, biotechnology and pharmaceutical industries, hospitals and diagnostic centers, and others end users.

Top Manufacturers Are:

Key Market Trends:

Drug Discovery Segment is Expected to Exhibit the Fastest Growth Rate Over the Forecast Period

Conventionally, drug discovery has been carried out using animal models. However, with the explosion of drug molecules synthesized/discovered in the past two decades, there has been a growth in high-throughput screening. Consequently, drug discovery has become a process that was time-resource intensive. Additionally, animal testing is subject to ethical controversies. Consequently, the demand for alternative methods for drug testing and drug discovery processes has gained momentum.

A specific application of 3D cell culture in drug discovery is organ-on-chips. These systems are being extensively employed by cancer therapeutic manufacturers for improving the benefit-risk balance by targeting precisely a particular cell type, a defined biomechanism, or a precise receptor. The current up-trend in cancer therapeutics research is likely to further spur the application of 3D cell cultures in drug discovery. Over the forecast period, much novel cancer therapeutics are expected to receive market approval, which is likely to, in turn, drive the growth of the 3D cell culture market.

North America Captured the Largest Market Share and is Expected to Retain its Dominance

North America dominated the overall 3D cell culture market with the United States accounting as the major contributor to the market. The United States is focusing more on R&D and is currently spending a lot on it. This has resulted in increasing technological advancements in the country. Many American applicants feature among the main patent applicants for the 3D cell culture domain. American applicants tend to develop their technologies in the United States, as well as in Asia. In 2016, an international collaboration between the United States, the United Kingdom, and the Netherlands, cancer-research heavy-weights, aimed to grow 1,000 new cell lines for scientists to study. The project is also expected to use cutting-edge techniques to generate its models, which will include 3D cultures called organoids, and cells that have been reprogrammed to grow indefinitely in culture. ICTDCCS 2018, 20th International Conference on 3D Cell Culture Systems, was held in Boston (the United States) on April 23-24, 2018. These factors have augmented the US 3D cell culture market and it is expected to further increase in the future.

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What 3D Cell Culture Market Research Offers:

And many more

Detailed TOC of 3D Cell Culture Market Segmented by Geography Growth, Trend, and Forecast:

1 INTRODUCTION 1.1 Study Deliverables 1.2 Study Assumptions 1.3 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET DYNAMICS 4.1 Market Overview 4.2 Introduction to Market Drivers and Restraints 4.3 Market Drivers 4.3.1 Huge R&D Investment by Life Science Companies 4.3.2 Development of Automated Large-scale Cell Culture Systems 4.3.3 Rising Need for Organ Transplantation 4.3.4 Use of 3D Cell Culture Models as Alternative Tools for In Vivo Testing 4.3.5 Increasing Focus on Regenerative Medicine 4.4 Market Restraints 4.4.1 Lack of Experienced and Skilled Professionals 4.4.2 Budget Restriction for Small- and Medium-sized Laboratories 4.4.3 Lack of Consistency in 3D Cell Culture Products 4.4.4 Stringent Process Controls for Advanced Handling Capabilities 4.5 Industry Attractiveness- Porters Five Forces Analysis 4.5.1 Threat of New Entrants 4.5.2 Bargaining Power of Buyers/Consumers 4.5.3 Bargaining Power of Suppliers 4.5.4 Threat of Substitute Products 4.5.5 Intensity of Competitive Rivalry

5 MARKET SEGMENTATION 5.1 By Technology 5.1.1 Extracellular Matrices (Scafffolds) 5.1.2 Bioreactors 5.1.3 Gels 5.1.4 Scaffold-free Platforms 5.1.5 Microchips 5.1.6 Other Technologies 5.2 By Application 5.2.1 Research 5.2.2 Drug Discovery 5.2.3 Tissue Engineering 5.2.4 Clinical Applications 5.2.5 Stem Cell Biology 5.2.6 Other Applications 5.3 By End User 5.3.1 Research Laboratories and Institutes 5.3.2 Biotechnology and Pharmaceutical Companies 5.3.3 Hospitals and Diagnostic Centers 5.3.4 Other End Users 5.4 Geography 5.4.1 North America 5.4.1.1 US 5.4.1.2 Canada 5.4.1.3 Mexico 5.4.2 Europe 5.4.2.1 UK 5.4.2.2 Germany 5.4.2.3 France 5.4.2.4 Italy 5.4.2.5 Spain 5.4.2.6 Rest of Europe 5.4.3 Asia-Pacific 5.4.3.1 China 5.4.3.2 Japan 5.4.3.3 India 5.4.3.4 Australia 5.4.3.5 South Korea 5.4.3.6 Rest of Asia-Pacific 5.4.4 Middle East & Africa 5.4.4.1 GCC 5.4.4.2 South Africa 5.4.4.3 Rest of Middle East & Africa 5.4.5 South America 5.4.5.1 Brazil 5.4.5.2 Argentina 5.4.5.3 Rest of South America

6 COMPETITIVE LANDSCAPE 6.1 Company Profiles 6.1.1 3D Biotek LLC 6.1.2 Becton Dickinson and Company 6.1.3 Sigma Aldrich Corporation 6.1.4 Corning Incorporated 6.1.5 Thermo Fisher Scientific 6.1.6 Global Cell Solutions Inc. 6.1.7 Nanofiber Solutions Incorporation 6.1.8 Insphero AG 6.1.9 Lonza Group 6.1.10 Nano 3D Biosciences

7 MARKET OPPORTUNITIES AND FUTURE TRENDS

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3D Cell Culture Market by Business Growth, Development Factors, Applications, and Future Prospects 2020 2024 - Owned

Global Stem Cell Therapy Market Research Analysis Including Growth Factors, Types And Application By Regions From 2020 To 2024 – Owned

Global Stem Cell Therapy Market Analysis to 2024 is a focused and comprehensive study of the Stem Cell Therapy industry with a focus on the global market trend. The information mentioned in the Global Stem Cell Therapy Market research report presents an overview of the latest trends observed in the global market. Besides, this report emphases on the latest events such as the technological developments and the product launches and their consequences on the Market. The research report delivers the global market revenue, parent market trends along with market attractiveness per market segment.

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Top Players of Stem Cell Therapy Market are:

Osiris Therapeutics NuVasive Chiesi Pharmaceuticals JCRPharmaceutical Pharmicell Medi-post Anterogen Molmed Takeda (TiGenix) Regional Stem Cell Therapy Market (regional production, demand and forecast by country):

The main goals of the research report elegant the overall market overview on Stem Cell Therapy market dynamics, historic volume and value, robust market methodology, Latest and future trends, Porters Five Forces Analysis, new technological development, cost structure, government policies and regulations, etc. Major companies, company overview, financial data, products and services, strategy analysis, key developments market competition, industry competition structure analysis, SWOT Analysis, etc.

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KEY MARKET SEGMENTS

On the basis of types, the Stem Cell Therapy Market is primarily split into:

Autologous Allogeneic On the basis of applications, the Stem Cell Therapy Market covers:

Musculoskeletal Disorder Wounds & Injuries Cornea Cardiovascular Diseases Others

Which market factors are explained in the report?

Study Coverage:Covers significant companies, vital market segments, the scope of the products offered in the global Stem Cell Therapy market, the years considered and the study objectives.

Executive Summary:It contains a summary of the most important studies, the Stem Cell Therapy market growing rate, modest conditions, market drivers, trends and problems as well as macroscopic indicators.

Production by region:This Stem Cell Therapy report provides information on imports and exports, production, sales and key players in all examined regional markets.

Manufacturer Profile:Each Company defined in this section is screened based on a SWOT analysis, products, value, their capacity and other important factors.

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Table of Contents

1 Stem Cell Therapy Market Overview

2 Global Stem Cell Therapy Competition by Manufacturers

3 Global Stem Cell Therapy Capacity, Revenue (Value) by Region)

4 Global Stem Cell Therapy Supply (Production), Export, Import by Region

5 Global Stem Cell Therapy Market Revenue (Value), Price Trend by Type

6 Global Stem Cell Therapy Market by Application

7 Global Stem Cell Therapy Company Profiles

8 Industrial Chain, Sourcing Strategy and Downstream Buyers

9 Stem Cell Therapy Market Effect Factors Analysis

10 Global Stem Cell Therapy Market Forecast

11 Research Findings and Conclusion

12 Appendix

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Global Stem Cell Therapy Market Research Analysis Including Growth Factors, Types And Application By Regions From 2020 To 2024 - Owned

Global Stem Cells Market 2020 Is Booming Across the Globe Explored in Latest Research by 2020-2024 – eRealty Express

Global Stem Cells Market Analysis to 2024 is a focused and comprehensive study of the Stem Cells industry with a focus on the global market trend. The information mentioned in the Global Stem Cells Market research report presents an overview of the latest trends observed in the global market. Besides, this report emphases on the latest events such as the technological developments and the product launches and their consequences on the Market. The research report delivers the global market revenue, parent market trends along with market attractiveness per market segment.

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Top Players of Stem Cells Market are:

CCBC Vcanbio Boyalife Beikebiotech Regional Stem Cells Market (regional production, demand and forecast by country):

The main goals of the research report elegant the overall market overview on Stem Cells market dynamics, historic volume and value, robust market methodology, Latest and future trends, Porters Five Forces Analysis, new technological development, cost structure, government policies and regulations, etc. Major companies, company overview, financial data, products and services, strategy analysis, key developments market competition, industry competition structure analysis, SWOT Analysis, etc.

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KEY MARKET SEGMENTS

On the basis of types, the Stem Cells Market is primarily split into:

Umbilical Cord Blood Stem Cell Embryonic Stem Cell Adult Stem Cell Other On the basis of applications, the Stem Cells Market covers:

Diseases Therapy Healthcare

Which market factors are explained in the report?

Study Coverage:Covers significant companies, vital market segments, the scope of the products offered in the global Stem Cells market, the years considered and the study objectives.

Executive Summary:It contains a summary of the most important studies, the Stem Cells market growing rate, modest conditions, market drivers, trends and problems as well as macroscopic indicators.

Production by region:This Stem Cells report provides information on imports and exports, production, sales and key players in all examined regional markets.

Manufacturer Profile:Each Company defined in this section is screened based on a SWOT analysis, products, value, their capacity and other important factors.

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Table of Contents

1 Stem Cells Market Overview

2 Global Stem Cells Competition by Manufacturers

3 Global Stem Cells Capacity, Revenue (Value) by Region)

4 Global Stem Cells Supply (Production), Export, Import by Region

5 Global Stem Cells Market Revenue (Value), Price Trend by Type

6 Global Stem Cells Market by Application

7 Global Stem Cells Company Profiles

8 Industrial Chain, Sourcing Strategy and Downstream Buyers

9 Stem Cells Market Effect Factors Analysis

10 Global Stem Cells Market Forecast

11 Research Findings and Conclusion

12 Appendix

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Embryos could be susceptible to COVID-19 from second week of pregnancy – Gulf News

Those planning a family should be even more cautious against infection Image Credit: Drew Hayes/ Unsplash

Human embryos could be susceptible to COVID-19 as early as the second week of pregnancy, if the mother gets sick, potentially affecting the chances of a successful pregnancy, according to a study.

Scientists at the UK's University of Cambridge and California Institute of Technology in the US found that genes thought to play a role in how the SARS-CoV-2 virus infects our cells have been found to be active in embryos as early as during the second week of pregnancy.

While initially recognised as causing respiratory disease, the SARS-CoV-2 virus, which causes COVID-19 disease, also affects many other organs, they said.

Advanced age and obesity are risk factors for complications but questions concerning the potential effects on foetal health and successful pregnancy for those infected with SARS-CoV-2 remain largely unanswered, according to the researchers.

In the journal Open Biology, the researchers described how they used technology to culture human embryos through the stage they normally implant in the body of the mother to look at the activity - or 'expression' - of key genes in the embryo. On the surface of the SARS-CoV-2 virus are large 'spike' proteins. Spike proteins bind to ACE2, a protein receptor found on the surface of cells in our body, the researchers explained. Both the spike protein and ACE2 are then cleaved, allowing genetic material from the virus to enter the host cell.

The virus manipulates the host cell's machinery to allow the virus to replicate and spread, they said.

The researchers found patterns of expression of the genes ACE2, which provide the genetic code for the SARS-CoV-2 receptor, and TMPRSS2, which provides the code for a molecule that cleaves both the viral spike protein and the ACE2 receptor, allowing infection to occur.

These genes were expressed during key stages of the embryo's development, and in parts of the embryo that go on to develop into tissues that interact with the maternal blood supply for nutrient exchange.

Gene expression requires that the DNA code is first copied into an RNA message, which then directs the synthesis of the encoded protein.

"Our work suggests that the human embryo could be susceptible to COVID-19 as early as the second week of pregnancy if the mother gets sick," said Professor Magdalena Zernicka-Goetz, who holds positions at both the University of Cambridge and Caltech.

"To know whether this really could happen, it now becomes very important to know whether the ACE2 and TMPRSS2 proteins are made and become correctly positioned at cell surfaces.

If these next steps are also taking place, it is possible that the virus could be transmitted from the mother and infect the embryo's cells," Zernicka-Goetz said.

Professor David Glover, also from Cambridge and Caltech, noted that genes encoding proteins that make cells susceptible to infection by the novel coronavirus become expressed very early on in the embryo's development.

"This is an important stage when the embryo attaches to the mother's womb and undertakes a major remodelling of all of its tissues and for the first time starts to grow, Glover said.

He added that COVID-19 could affect the ability of the embryo to properly implant into the womb or could have implications for future foetal health.

The team said that further research is required using stem cell models and in non-human primates to better understand the risk.

However, they said their findings emphasise the importance for women planning for a family to try to reduce their risk of infection.

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Embryos could be susceptible to COVID-19 from second week of pregnancy - Gulf News